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Control of macro-/microstructure and mechanical properties of a wire-arc additive manufactured aluminum alloy

机译:控制宏观/微观结构和钢丝添加制造铝合金的机械性能

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摘要

Wire-arc additive manufacturing (WAAM) has received considerable attention in the past years due to advantages in terms of deposition rate, design freedom, and buy-to-fly ratio. Particularly, cold metal transfer welding has been used extensively allowing for precise process control during manufacturing. Processing parameters have to be adjusted to advance this novel fabrication technique to meet the alloys' requirements with the aim of meeting property goals and increasing microstructural homogeneity. In the present contribution, the alteration of the building strategy during WAAM of an aluminum alloy via variation of the polarity sequence is suggested. These parameters allow adjusting the heat input and, thus, the component's temperature and cooling rate. Firstly, the quality of the surface is improved using adjusted deposition parameters. Secondly, a deposition strategy with a lower thermal exposure of the alloy provides a more homogeneous microstructure in terms of grain size, grain morphology, and distribution of second phases. Thirdly, the burn-off of volatile elements is reduced with decreasing heat input. The observed microstructural changes also result in more homogeneous local mechanical properties. It is demonstrated that the adjustment of the polarity sequence is a strong tool to influence the microstructure during WAAM enabling increased exploitation of this innovative technology.
机译:由于在沉积速率,设计自由和买入比率方面,过去几年来,电弧添加剂制造(WAAM)已得到了相当大的关注。特别地,冷金属转移焊接已经广泛地用于制造过程中精确的过程控制。必须调整处理参数以推进这种新颖的制造技术,以满足合金的要求,以满足性能目标和增加微观结构均匀性。在本贡献中,提出了通过极性序列的变化的铝合金WaAM期间的建筑物策略的改变。这些参数允许调节热输入,从而调节部件的温度和冷却速率。首先,使用调整后的沉积参数来改善表面的质量。其次,在晶粒尺寸,晶粒形态和第二阶段的分布方面,具有较低的合金热暴露的沉积策略提供更均匀的微观结构。第三,随着热量输入的降低,挥发性元件的烧坏减少。观察到的微观结构变化也导致更均匀的局部机械性能。结果表明,极性序列的调整是影响WAAM期间微观结构的强大工具,从而提高了这种创新技术的开发。

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